Method for preparing formic acid, methanol and methane by using metal hydro-thermal to reduce CO2
A CO2, formic acid technology, applied in the field of waste recycling, can solve the problems of large power consumption, mineral resources, energy waste, etc., to achieve the effect of repeated recycling of resources, reduction of production costs, and convenient operation.
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Embodiment 1
[0019] The exhaust gas of coal-fired power plants is CO 2 One of the main sources of emissions. Currently, China's power sector emits 2.7 billion tons of CO2 per year 2 It ranks second in the world after the United States. Applying the present invention to the power sector, the waste CO emitted by it can be 2 Collected into the hydrothermal reactor for treatment. Moreover, the waste heat of the power plant can provide the temperature required for some reactions, so that the energy consumption of hydrothermal treatment of carbon dioxide can be reduced.
[0020] In the small test, a tubular intermittent hydrothermal reactor with SUS316 stainless steel round tube was used for the experiment, the filling rate of water was 35%, and the CO 2 The content is 4.0g / L, and Zn powder is added into the reaction equipment together as a reducing agent. After adding, the content reaches 1-10mmol, and the pH=9. The experimental temperature is 300°C, the reaction pressure is 12Mpa, and the...
Embodiment 2
[0024] The average operating efficiency of coal-fired industrial boilers is only 60%-65%. The annual emission of soot is about 2 million tons, sulfur dioxide is about 7 million tons, and carbon dioxide is nearly 1 billion tons. It is the second largest source of soot pollution after thermal power plants. . In response to this situation, hydrothermal reaction devices can be installed in each coal-fired plant to collect and process the exhaust gas emitted by it.
[0025] In the small test, a batch reactor made of plastic king was used for the experiment, the filling rate of water was 30%, and the CO 2 The content is 3.5g / L, and Al powder is put into the reactor together as a reducing agent. After adding, the content reaches 8-40mmol, pH=9-10, the reaction temperature is 250°C, the reaction pressure is 7Mpa, and the reaction time is 12h. After the reaction, the products were detected by GC / MS and HPLC detectors. The analysis results showed that formic acid was the main product w...
Embodiment 3
[0029] Emissions of greenhouse gases such as carbon dioxide from waste incineration plants are increasing, and it has been calculated that most incinerators produce more carbon dioxide per year than thermal power plants. For the large amount of carbon dioxide contained in the flue gas, a hydrothermal treatment equipment can be built on site to collect the discharged waste gas and use it as raw material for hydrothermal conversion. Moreover, the large amount of heat energy brought by incineration can fully provide the temperature required for the reaction, so that the operating cost of hydrothermal treatment of carbon dioxide is further reduced.
[0030] In the small test, a tubular batch reactor with a SUS316 stainless steel round tube was used for the experiment, the filling rate of water was 35%, and the CO 2 The content is 4.0g / L, and Al powder is added into the hydrothermal reaction equipment together as a reducing agent. After adding, the content reaches 1-10mmol, and the...
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